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Fluorescence spectroscopy of collagen crosslinking: non-invasive and in-situ evaluation of corneal stiffness

机译:胶原交联的荧光光谱:角膜刚度的无创和原位评估

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Collagen is a long fibrous structural protein that imparts mechanical support, strength and elasticity to many tissues. The state of the tissue mechanical environment is related to tissue physiology, disease and function. In the cornea, the collagen network is responsible for its shape and clarity; disruption of this network results in degradation of visual acuity, for example in the keratoconus eye disease. The objective of the present study is to investigate the feasibility of using the endogenous fluorescence of collagen crosslinks to evaluate variations in the mechanical state of tissue, in particular, the stiffness of cornea in response to different degrees of photo-crosslinking or RGX treatment - a novel keratoconus treatment. After removing the epithelium, rabbit corneas were stained with Rose Bengal and then irradiated with a 532 nm solid-state laser. Analysis of the excitation spectra obtained by fluorescence spectroscopy shows a correlation between the fluorescence intensity at 370/460 nm excitation/emission wavelengths and the mechanical properties. In principle, it may be feasible to use the endogenous fluorescence of collagen crosslinks to evaluate the mechanical stiffness of comea non-invasively and in situ.
机译:胶原蛋白是一种长纤维结构蛋白,可为许多组织提供机械支撑,强度和弹性。组织机械环境的状态与组织生理,疾病和功能有关。在角膜中,胶原蛋白网络负责其形状和清晰度。该网络的破坏导致视力下降,例如在圆锥角膜眼病中。本研究的目的是研究使用胶原蛋白交联的内源性荧光评估组织机械状态变化的可行性,尤其是评估角膜刚度对不同程度的光交联或RGX处理的反应-新型圆锥角膜治疗。去除上皮后,兔角膜用Rose Bengal染色,然后用532 nm固态激光照射。通过荧光光谱法获得的激发光谱的分析显示了在370 / 460nm激发/发射波长下的荧光强度与机械性能之间的相关性。原则上,使用胶原蛋白交联的内源性荧光以非侵入性方式和原位评估彗星的机械刚度可能是可行的。

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